Modeling Ship Air Conditioning Maintenance Costs Using the Integrated Condition Assessment System (ICAS)

Abstract

The United States Navy operates in seas such as the Arabian Gulf where water temperatures can exceed 90 degrees and air temperatures surpass 95 degrees An intuitive link exists between these higher operating temperatures and an increased demand on shipboard Air Conditioning (A/C) plants Increased plant usage, in turn, causes higher A/C plant maintenance costs, To build an accurate cost model for shipboard Air Conditioning plants, this thesis examines the relationship between seawater temperature, A/C plant run-hours, and A/C plant maintenance costs, Data generated by the Integrated Condition Assessment System (ICAS) were used to test a correlation between these factors for TICONDEROGA, ARLEIGH BURKE, and OLIVER HAZARD PERRY class ships, The results indicate that although seawater temperature is a statistically significant factor in determining A/C plant use, plant use is not a statistically significant driver of maintenance costs, Although the findings discourage further research into this area, the methodology developed for using ICAS data may be applied to other shipboard systems

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Document Details

Document Type
Technical Report
Publication Date
Dec 01, 2002
Accession Number
ADA411330

Entities

People

  • Gregory D. Blyden

Organizations

  • Naval Postgraduate School

Tags

DTIC Thesaurus Topics

  • Air Conditioning
  • Air Temperature
  • Analysis Of Variance
  • Arleigh Burke Class
  • Correlation Analysis
  • Cost Analysis
  • Cost Models
  • Costs
  • Logistics
  • Maintenance
  • Maintenance Costs
  • Naval Operations
  • Naval Vessels
  • Navy
  • United States
  • Uss Arleigh Burke
  • Uss Ticonderoga

Readers

  • Electrical Engineering
  • Life Cycle Cost Analysis
  • Naval Architecture and Marine Engineering.